Published 1994 | Version v1
Journal article

A strategy for validation a concept model for radionuclide migration in the saturated zone beneath Yucca Mountain

  • 1. Los Alamos National Laboratory, Earth and Environmental Sciences Div., Los Alamos (United States)

Description

A conceptual model for radionuclide migration in the saturated zone beneath Yucca Mountain is presented. The available hydrologic data from the site is compiled to present a qualitative picture of transport of radionuclides horizontally within the first 100-200 m of the saturated zone. The transport model consists of flow within fractures and interchange of dissolved species between the fractures and surrounding matrix blocks via molecular diffusion. A parametric study illustrates that at the groundwater conditions expected to exist in the saturated zone, radionuclide will have ample time to diffuse fully within the matrix blocks. The result is a predicted solute transport time several orders of magnitude greater than the groundwater travel time (GWTT). To validate this model, a suite of interwell tracer tests are proposed at various flow rates and with conservative and sorbing species. Numerical simulations show that these tests will allow us to discriminate between a matrix diffusion model and a more conventional continuum transport model. (author) 8 figs., tabs., 35 refs

Additional details

Publishing Information

Journal Title
Radioactive Waste Management and Environmental Restoration
Journal Volume
19
Journal Issue
1-3
Journal Page Range
p. 73-96.
ISSN
1065-609X
CODEN
RWMREG

Optional Information

Notes
Special issue Yucca Mountain.